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从生物质衍生的羟基肉桂酸到新型可持续且无毒的酚类紫外线过滤器:一段多学科之旅。

From Biomass-Derived -Hydroxycinnamic Acids to Novel Sustainable and Non-Toxic Phenolics-Based UV-Filters: A Multidisciplinary Journey.

作者信息

Rioux Benjamin, Combes Jeanne, Woolley Jack M, Rodrigues Natércia D N, Mention Matthieu M, Stavros Vasilios G, Allais Florent

机构信息

URD Agro-Biotechnologies Industrielles (ABI), CEBB, AgroParisTech, Pomacle, France.

Department of Chemistry, University of Warwick, Coventry, United Kingtom.

出版信息

Front Chem. 2022 Jul 5;10:886367. doi: 10.3389/fchem.2022.886367. eCollection 2022.

Abstract

Although organic UV-filters are extensively used in cosmetics to protect consumers from the deleterious effects of solar UV radiation-exposure, they suffer from some major drawbacks such as their fossil origin and their toxicity to both humans and the environment. Thus, finding sustainable and non-toxic UV-filters is becoming a topic of great interest for the cosmetic industry. A few years ago, sinapoyl malate was shown to be a powerful naturally occurring UV-filter. Building on these findings, we decided to design and optimize an entire value chain that goes from biomass to innovative biobased and non-toxic lignin-derived UV-filters. This multidisciplinary approach relies on: 1) The production of phenolic synthons using either metabolite extraction from biomass or their bioproduction through synthetic biology/fermentation/in stream product recovery; 2) their functionalization using green chemistry to access sinapoyl malate and analogues; 3) the study of their UV-filtering activity, their photostability, their biological properties; and 4) their photodynamics. This mini-review aims at demonstrating that combining biotechnology, green chemistry, downstream process and photochemistry is a powerful approach to transform biomass and, in particular lignins, into high value-added innovative UV-filters.

摘要

尽管有机紫外线过滤剂被广泛用于化妆品中,以保护消费者免受太阳紫外线辐射暴露的有害影响,但它们存在一些主要缺点,例如其化石来源以及对人类和环境的毒性。因此,寻找可持续且无毒的紫外线过滤剂正成为化妆品行业极为关注的一个话题。几年前,苹果酸芥子酰酯被证明是一种强大的天然存在的紫外线过滤剂。基于这些发现,我们决定设计并优化一个完整的价值链,该价值链从生物质开始,到创新的生物基且无毒的木质素衍生紫外线过滤剂。这种多学科方法依赖于:1)使用从生物质中提取代谢物或通过合成生物学/发酵/流内产物回收进行生物生产来制备酚类合成子;2)使用绿色化学对其进行功能化,以获得苹果酸芥子酰酯及其类似物;3)研究它们的紫外线过滤活性、光稳定性、生物学特性;以及4)它们的光动力学。本综述旨在证明,将生物技术、绿色化学、下游工艺和光化学相结合,是将生物质,特别是木质素,转化为高附加值创新紫外线过滤剂的有效方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/96f6/9294603/fc5dbe85da30/fchem-10-886367-g001.jpg

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